Literature DB >> 11040225

Cardiac aldosterone production in genetically hypertensive rats.

Y Takeda1, T Yoneda, M Demura, I Miyamori, H Mabuchi.   

Abstract

Aldosterone is synthesized in extra-adrenal tissues, both blood vessels and brain. We undertook the present study to determine whether the rat heart produces aldosterone and to investigate the effects of adrenalectomy, ACE inhibition, and angiotensin II on aldosterone synthesis in the heart. To clarify the pathophysiological role of cardiac aldosterone in the hypertensive heart, we compared the synthesis of aldosterone in the hearts of stroke-prone spontaneously hypertensive rats (SHRSP) with that in Wistar-Kyoto rats. The effects of the aldosterone antagonist spironolactone on myocardial hypertrophy in adrenalectomized SHRSP were also studied. Isolated rat hearts were perfused for 2 hours, and the perfusate was analyzed with HPLC and mass spectrometry. The activity of aldosterone synthase was estimated on the basis of the conversion of [(14)C]deoxycorticosterone to [(14)C]aldosterone. The levels of aldosterone synthase gene (CYP11B2) mRNA were determined with competitive polymerase chain reaction. Aldosterone production, the activity of aldosterone synthase, and the expression of CYP11B2 mRNA were increased in hearts from adrenalectomized rats and rats treated with angiotensin II. ACE inhibitors decreased cardiac aldosterone synthesis. Cardiac aldosterone, aldosterone synthase activity, and CYP11B2 mRNA levels in hearts from 2- and 4-week-old SHRSP were significantly greater than those of age-matched Wistar-Kyoto rats. Spironolactone prevented cardiac hypertrophy in adrenalectomized SHRSP. These results suggest that the rat heart produces aldosterone and that endogenous cardiac aldosterone may affect cardiac function and hypertrophy in hypertension in rats.

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Year:  2000        PMID: 11040225     DOI: 10.1161/01.hyp.36.4.495

Source DB:  PubMed          Journal:  Hypertension        ISSN: 0194-911X            Impact factor:   10.190


  21 in total

Review 1.  Aldosterone and specific aldosterone receptor antagonists in hypertension and cardiovascular disease.

Authors:  Emmanuel L Bravo
Journal:  Curr Hypertens Rep       Date:  2003-04       Impact factor: 5.369

2.  Effects of long-term enalapril and losartan therapy of heart failure on cardiovascular aldosterone.

Authors:  J C Xiu; P Wu; J P Xu; Z Guo; W Lai; Y Zhang; S Li; J Li; Y Liu
Journal:  J Endocrinol Invest       Date:  2002-05       Impact factor: 4.256

3.  Mineralocorticoid receptor activation is crucial in the signalling pathway leading to the Anrep effect.

Authors:  Claudia I Caldiz; Romina G Díaz; Mariela B Nolly; Gladys E Chiappe de Cingolani; Irene L Ennis; Horacio E Cingolani; Néstor G Pérez
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Review 4.  Mineralocorticoid Receptor Blockade in End-Stage Renal Disease.

Authors:  Radmila Lyubarova; Elvira O Gosmanova
Journal:  Curr Hypertens Rep       Date:  2017-05       Impact factor: 5.369

5.  A de novo unequal cross-over mutation between CYP11B1 and CYP11B2 genes causes familial hyperaldosteronism type I.

Authors:  C A Carvajal; C B Stehr; P A González; E M Riquelme; T Montero; M J Santos; A M Kalergis; C E Fardella
Journal:  J Endocrinol Invest       Date:  2010-07-13       Impact factor: 4.256

6.  Impact of mineralocorticoid receptor blockade with direct renin inhibition in angiotensin II-dependent hypertensive mice.

Authors:  Atsushi Hashimoto; Yoshimichi Takeda; Shigehiro Karashima; Mitsuhiro Kometani; Daisuke Aono; Masashi Demura; Takuya Higashitani; Seigo Konishi; Takashi Yoneda; Yoshiyu Takeda
Journal:  Hypertens Res       Date:  2020-05-12       Impact factor: 3.872

7.  Steroidogenic acute regulatory protein/aldosterone synthase mediates angiotensin II-induced cardiac fibrosis and hypertrophy.

Authors:  Wei-Wei Zhang; Rong-Hua Zheng; Feng Bai; Katelyn Sturdivant; Ning-Ping Wang; Erskine A James; Himangshu S Bose; Zhi-Qing Zhao
Journal:  Mol Biol Rep       Date:  2019-12-09       Impact factor: 2.316

Review 8.  DNA Methylation of the Angiotensinogen Gene, AGT, and the Aldosterone Synthase Gene, CYP11B2 in Cardiovascular Diseases.

Authors:  Yoshimichi Takeda; Masashi Demura; Takashi Yoneda; Yoshiyu Takeda
Journal:  Int J Mol Sci       Date:  2021-04-27       Impact factor: 5.923

9.  Effects of spironolactone in spontaneously hypertensive adult rats subjected to high salt intake.

Authors:  Marcelo Perim Baldo; Divanei Zaniqueli; Ludimila Forechi; Rebeca Caldeira Machado; Sérgio Lamêgo Rodrigues; José Geraldo Mill
Journal:  Clinics (Sao Paulo)       Date:  2011       Impact factor: 2.365

10.  Mitochondrial reactive oxygen species (ROS) as signaling molecules of intracellular pathways triggered by the cardiac renin-angiotensin II-aldosterone system (RAAS).

Authors:  V C De Giusti; C I Caldiz; I L Ennis; N G Pérez; H E Cingolani; E A Aiello
Journal:  Front Physiol       Date:  2013-05-30       Impact factor: 4.566

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